
Allicdata Part #: | 1525-ND |
Manufacturer Part#: |
1525 |
Price: | $ 40.89 |
Product Category: | Sensors, Transducers |
Manufacturer: | Adafruit Industries LLC |
Short Description: | SOLAR PANEL LARGE 6V 5.6W |
More Detail: | Monocrystalline Solar Cell 5.6W 7V |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | $ 37.17000 |
Series: | -- |
Part Status: | Active |
Power (Watts) - Max: | 5.6W |
Current @ Pmpp: | 930mA |
Voltage @ Pmpp: | 6V |
Current - Short Circuit (Isc): | 1A |
Type: | Monocrystalline |
Voltage - Open Circuit: | 7V |
Operating Temperature: | -- |
Package / Case: | Cell (12) |
Size / Dimension: | -- |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Solar cells, also known as photovoltaic cells, are devices formulated to convert energy from the sun’s rays into electrical energy. Solar cells, or photovoltaic cells, operate by converting and converting photons from the sun’s rays into electric current. This is done through the photovoltaic effect, wherein the electrons in the cell are excited and subsequently move to their respective polarities, thus producing the required electric current. As such, solar cells are often used as a source of renewable energy, as the sun’s energy is available to every area of the world and has a near infinite supply. The 1525 application area refers to the fact that solar cells are particularly suitable for use in applications that require a high energy-density, while the working principle is the way in which the cells convert energy from the sun’s rays into electric current.
The 1525 application field of solar cells covers a wide range of industries, from residential power generation to powering large-scale industrial setups. For instance, solar cells are often used for residential electricity generation, as they offer a low-cost, reliable, and safe energy source. They are also commonly used in agricultural settings, where they provide a dependable power source for equipment that require large amounts of energy, such as irrigation systems and greenhouses. In addition, solar cells are used in the transport and communication industries as well, as they are a clean, reliable, and low-cost power source. Solar cells are also used in the medical industry, as they are a clean, safe, and environmentally friendly source of energy that can be tailored to the specific needs of users in order to ensure optimal performance.
The working principle of solar cells involves the photovoltaic effect, wherein the photons, or particles of light, from the sun’s rays are converted into electric current. The cell comprises of two types of components, a photoactive layer and an electrical contact layer. The photoactive layer consists of materials such as silicon, which absorb energy from the photons, with each type of material having different levels of responsiveness to the light. The electrical contact layer is responsible for the conversion of energy into electrical current, as it allows electrons to travel in between the two layers and transfer their energy to the electrical contact layer.
The efficiency of a solar cell is influenced by various factors, such as the type of material being used, the amount of energy absorbed from the sun’s rays, and the size of the solar cell. All of these factors, along with the angle of the installation and the environment that the cell is being used in, can all contribute to the overall efficiency of the cell. In addition, the development of new technologies such as thin-film solar cells, and the use of advanced materials such as silicon nanocrystals, have improved the efficiency of solar cells significantly.
In conclusion, 1525 solar cells are devices that use the photovoltaic effect to convert the energy from the sun’s rays into electrical energy. The 1525 application area of solar cells covers a wide range of industries, from residential power generation to powering large-scale industrial setups, and the working principle of solar cells involves the conversion of the energy from the sun’s rays into electrical current. The efficiency of solar cells can be increased by utilizing more advanced materials and technologies, such as thin-film solar cells and silicon nanocrystals.
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